Patent classifications
A61F2/0095
ENGINEERED TENDON GRAFT FOR ROTATOR CUFF REPAIR
The present disclosure relates to tissue engineering, and more particularly to a method for treating or repairing rotator cuff or other tendon tears or damage using scaffold-free, 3-dimensional engineered tendon constructs.
PACKAGING AND CORRESPONDING UNPACKAGING PROCEDURE
The invention relates to a package comprising a hollow body, a lid joined to the hollow body by a hinge, and a protective cover (that can be moved between a closed position in which it covers the lid and an open position in which it is separated from the hollow body and forms, with a coupling device, a lever arm coupled to the lid, with the coupling device being able to assume a retracted configuration when the cover is in the closed position, and a deployed configuration when the cover is in the open position. The invention also relates to a corresponding unpackaging process.
Packaging for medical device
Packaging for a medical implant such as a hernia repair prosthetic material includes a carrier and a stiffener. The hernia repair prosthetic material is placed adjacent to the stiffener within the carrier. The carrier assembly is sealed within an outer pouch, such as a foil pouch, and sterilized. When the carrier is being removed from the pouch in preparation for surgery, the stiffener helps prevent the carrier assembly from contacting non-sterile portions of the pouch.
KITS FOR SURGICAL REPAIR OF SOFT TISSUE DEFECTS AND COMPONENTS, PACKAGING, AND METHODS OF USE THEREOF
The present disclosure describes kits for surgical repair of soft tissue defects, including hernias. The kits include any combination of components selected from an implantable sheet, a central tie, a delivery device, an insertion member, and/or a rolling device. Packaging for the kits and/or components and methods of using the kits and/or components are also provided.
System and method for facet joint replacement
A system for replacing at least a portion of a natural facet joint includes a fixation member implantable in a vertebra, an inferior facet articular surface and an inferior strut which may be formed separately from the inferior articular surface. The inferior strut has a first end securable to the fixation member and a second end which may comprise a sphere with a hemispherical surface. An attachment mechanism may include a capture feature shaped to receive the second end of the inferior strut, and the mechanism may provide an adjustable configuration, allowing polyaxial adjustment between the inferior articular surface and the second end. A locking member may be actuated to exert force on the second end to provide a locked configuration. The system may further include a superior facet joint implant with a superior articular surface shaped to articulate with the inferior articular surface.
Orthopaedic instrument system including an instrument caddy and method for assembling a surgical instrument
An orthopaedic instrument system including an instrument caddy is disclosed. The instrument caddy is configured to receive one or more cutting broaches to house the cutting broaches between orthopaedic surgical procedures. The instrument caddy is also configured to be used during a surgical procedure to assist a user in assembling the cutting broach with another surgical instrument. A method of assembling a surgical instrument is also disclosed.
Stent
A stent is disclosed that has an elongated body composed of a bioabsorbable polymer having a proximal end, a distal end, two open spiral channels formed on the exterior surface of the body to provide fluid communication between the proximal end and the distal end. The stent also has a central lumen open at the proximal and distal ends of the stent for the passage of a guide wire. A method for using the stent and a kit containing the stent are also disclosed.
Systems and methods for sterile delivery of prostheses
Systems and methods are disclosed for sterile delivery of prostheses that protect refined and/or conditioned surface properties and thereby reduce aging of surface properties in prostheses. An example of the system includes a partially custom-shaped holder that also serves as an insertion tool that holds a customized dental prosthesis in a pre-defined position inside a titanium container that is hermetically sealed. Container materials serve as a getter or catalyst with respect to the osseoconductive surface. An example of the method includes laser welding to hermetically seal a metal container as packaging for a prosthesis with a metal foil, and the sterilization of the packaged and sealed prosthesis with dry heat.
Modular pre-loaded medical implants and delivery systems
Modular pre-loaded implant subassemblies that can be packaged separately from a handle, which allows using any one of a plurality of separately packaged modular pre-loaded implants with a common handle.
APPARATUSES FOR THE IMPLANTATION OF MEDICAL DEVICES AND METHODS OF USE THEREOF
A medical device may include a shalt extending between a proximal end and a distal end. The shaft may include a lumen therein. The medical device may include a handle coupled to the proximal end of the shaft and may include a mode selector. The mode selector may be adapted to transition between a first mode and a second mode of the medical device. The medical device may further include a compressed fluid source. In the first mode, the compressed fluid source may he coupled with the shaft so as to impart a negative pressure in at least a portion of the lumen. In the second mode, the compressed fluid source may be fluidly coupled with the shaft so as to impart a positive pressure in the at least a portion of the lumen.